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Biomedical subjects

S Edmonds

Publications and source records attributed to S Edmonds.

13 recordsLinked to original sources

Multiple T cell expansions are found in the blood and synovial fluid of patients with reactive arthritis.

OBJECTIVE: To look for evidence of T lymphocyte expansions in the blood and synovial fluid (SF) of patients with reactive arthritis (ReA). METHODS: Paired peripheral blood and synovial samples from 10 patients with ReA were studied by dual color flow cytometry using T cell receptor (TCR) V beta specific and CD4 or CD8 specific antibodies. Two synovial CD8 expansions were studied by 3 color flow cytometry. Peripheral blood samples from 13 healthy, age matched individuals were studied as controls. RESULTS: Statistically significant expansions were observed in all patients, occurring in blood and SF CD4 and CD8 compartments, but were most common in the synovial CD8 compartment. Expansions studied in further detail displayed an activated "memory" phenotype. A synovial BV22S1/CD8 expansion was seen in 5/6 patients with sexually acquired ReA. CONCLUSION: Multiple T lymphocyte expansions are found in both the blood and SF of patients with ReA. Expansions were most commonly found in the synovial CD8 compartment, where they appeared to express both activation and memory markers. This indicates that T lymphocytes (and in particular cytotoxic T cells) may play a pathogenic role in ReA. These findings are consistent with either an antigen or a superantigen driven response.

Adolescent↗

A comparative evaluation of the metabolic profiles of normal and inflammatory knee-joint synovial fluids by high resolution proton NMR spectroscopy.

High resolution 1H NMR spectroscopy has been employed to investigate the metabolic profile of healthy human knee-joint synovial fluid (SF) and the biochemical data acquired have been compared with those of matched serum, and inflammatory knee-joint SF samples. Results obtained indicate that the healthy human knee-joint has a hypoxic status (high lactate level when expressed relative to that of paired serum) that is milder than that of the inflamed human knee-joint. Moreover, normal SF differs from that of inflammatory SF in that it contains little or no NMR-detectable lipoprotein-associated fatty acids and 'acute-phase' glycoproteins, an observation reflecting the limited passage of these macromolecules from plasma into the synovial space in healthy subjects.

Acute-Phase Proteins↗

Effect of thiol compounds on human complement component C4.

Thiol compounds have been investigated as inhibitors of the covalent binding reaction of human complement protein C4 using Sepharose-C1s as a combined activating and binding surface. o- and p-substituted aminothiophenols are equally effective inhibitors, whereas the m-substituted compound is a less potent inhibitor. The anti-hypertensive drug captopril is also shown to inhibit the covalent binding reaction. A comparison of the effects of these compounds on the covalent binding reaction of isolated C4A and C4B has been made. Results suggest that a Pro-to-Leu substitution in C4B is likely to account for the differences in inhibitory potency of C4B compared with C4A observed with the aromatic inhibitors.

Aminophenols↗

The interaction of soluble human complement receptor type 1 (sCR1, BRL55730) with human complement component C4.

Human CR1 is a membrane-bound protein which plays an important role in the control of the human complement system. In addition to its involvement in the processing and clearance of immune complexes with C3b or C4b on their surface, CR1 acts as a cofactor for the proteolysis of C3b and C4b by Factor I. sCR1 is a recombinant, soluble form of CR1 which retains the cofactor activities of CR1, and is of potential therapeutic value for the suppression of complement-mediated tissue damage in vivo. An assay has been established using microtitre plates to explore the binding of sCR1 to the two isotypes of C4, C4A and C4B, and to C4 fragments. Specific binding of 125I-sCR1 to C4b and ammonia-treated C4 has been demonstrated. The binding of 125I-sCR1 to ammonia-treated C4 is dependent on pH and ionic strength, decreasing with an increase in pH and with an increase in ionic strength. At physiological ionic strength, up to twice as much 125I-sCR1 bound to ammonia-treated C4A as bound to ammonia-treated C4B. This preference of sCR1 for binding to the C4A isotype has implications for the clinical association of immune complex disease with C4A null alleles.

Ammonia↗

Leukocyte activation and function-associated antigens in inflammatory disease.

Expression of adhesion molecules, CD11a, CD11b and CD18, and of the function-associated molecules CD3, CD4, CD8, CD16, CD19, CD56 and CD57 was assayed on peripheral blood leukocytes from normal control subjects (n = 10), and from patients with adult periodontitis PD (n = 9), ankylosing spondylitis AS (n = 11) and rheumatoid arthritis RA (n = 14). A novel rapid fixation leukocyte preparation technique was used which prevents artefactual up-regulation of surface antigens. In RA patients, the percentage of CD18+ lymphocytes was decreased and that of CD11b+ neutrophils was increased. On lymphocytes the mean fluorescence intensity (MFI) of both CD11b and CD18 was decreased whereas that of CD57 was increased. In AS patients the percentages of CD11b+ lymphocytes and neutrophils were increased and CD18+ lymphocytes and neutrophils were decreased. On lymphocytes the MFIs of CD11b and CD18 were decreased, whilst that of CD16 was increased. On neutrophils the MFI for CD18 was increased. No significant differences (p < 0.01) were seen for the periodontitis patients. It is suggested that the antigen expression on peripheral blood cells from RA and AS patients is consistent with leukocyte activation.

Antigens, Differentiation, T-Lymphocyte↗

Commercial sunscreen lotions prevent ultraviolet radiation-induced depletion of epidermal Langerhans cells in Skh-1 and C3H mice.

There is much controversy regarding the ability of sunscreens to prevent ultraviolet (UV)-induced immune suppression. Epidermal Langerhans cells (LC) play a key antigen-presenting role in the afferent limb of the immune system's response to antigens introduced through the skin. It has been suggested that depletion of LC in UV-exposed skin is a critical step toward the induction of immunosuppression by UV radiation. There are a number of disparate reports with inconsistent results concerning the ability of sunscreens to prevent UV-induced depletion of LC. The purpose of this study was to systematically evaluate the ability of sunscreens to prevent UV-induced LC depletion in mice. Epidermal sheets obtained from skin biopsies taken from mice exposed to UV radiation from Kodacel-filtered FS20 sunlamps, which do not emit UV power at wavelengths < 290 nm, were immunoperoxidase stained for LC using a rat monoclonal antibody against mouse Ia (major histocompatibility complex class II antigen). Time course and dose-response curves for LC depletion were generated for Skh-1 and C3H mice. Dose-response curves for acute UV exposure induced depletion of LC in Skh-1 and C3H mice were similar, but not identical. LC density in the skin of Skh-1 mice that received chronic UV exposure (3 days/week for 8 weeks) was reduced by 62% after 2 weeks of exposure, but returned to normal levels by 6 weeks. Five commercial sunscreen lotions with labeled sun protection factors (SPF) of 4, 8, 15, 30 and 45 were tested for their capacity to block UV-induced depletion of LC. LC were depleted approximately 75% in the skin of unprotected or placebo lotion treated Skh-1 mice exposed to UV given on two consecutive days. Conversely, LC depletion was prevented in similarly UV exposed Skh-1 mice protected with a SPF 30 sunscreen. In C3H mice the levels of protection against LC depletion provided by the five sunscreens were proportional to the level of protection predicted by their labeled SPF. Comparisons of dose-response curves showed that significantly higher doses of UV were required for LC depletion and induction of skin edema than for the induction of local suppression of contact hypersensitivity. Thus, at UV doses where sunscreens provide complete protection against immunosuppression of contact hypersensitivity, prevention of LC depletion and skin edema would be expected.

Animals↗